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Precise Measurement of Deuteron Tensor Analyzing Powers with BLAST

Author(s)
Kohl, Michael; Alarcon, R.; Booth, E.; Calarco, John R.; Crawford, C.; Fatemi, Renee; Filoti, O.; Gao, H.; Geis, E.; Karpius, P.; Lee, T.; McIlhany, K.; Rapaport, J.; Sindile, A.; Sirca, S.; Six, E.; Smith, T.; Tonguc, B.; Xu, W.; Zhang, C.; Akdogan, Taylan; Bertozzi, William; Botto, Tancredi; Clasie, Benjamin Michael Patrick; DeGrush, Adam J.; Dow, Karen A.; Farkhondeh, Manouchehr; Franklin, Wilbur; Gilad, Shalev; Hasell, Douglas K.; Kolster, Hauke; Maschinot, Aaron Joseph; Matthews, J.; Meitanis, Nikolas; Milner, Richard G.; Redwine, Robert P.; Seely, J.; Shinozaki, A.; Tschalar, C.; Tsentalovich, Evgeni P.; Turchinetz, William E.; Xiao, Y.; Zhou, Z. -L.; Ziskin, Vitaliy; Zwart, T.; ... Show more Show less
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Abstract
We report a precision measurement of the deuteron tensor analyzing powers T[subscript 20] and T[subscript 21] at the MIT-Bates Linear Accelerator Center. Data were collected simultaneously over a momentum transfer range Q=2.15–4.50  fm[superscript -1] with the Bates Large Acceptance Spectrometer Toroid using a highly polarized deuterium internal gas target. The data are in excellent agreement with calculations in a framework of effective field theory. The deuteron charge monopole and quadrupole form factors G[subscript C] and G[subscript Q] were separated with improved precision, and the location of the first node of G[subscript C] was confirmed at Q=4.19±0.05  fm[superscript -1]. The new data provide a strong constraint on theoretical models in a momentum transfer range covering the minimum of T[subscript 20] and the first node of G[subscript C].
Date issued
2011-12
URI
http://hdl.handle.net/1721.1/69626
Department
Bates Linear Accelerator Center; Massachusetts Institute of Technology. Department of Physics; Massachusetts Institute of Technology. Laboratory for Nuclear Science
Journal
Physical Review Letters
Publisher
American Physical Society (APS)
Citation
Zhang, C. et al. “Precise Measurement of Deuteron Tensor Analyzing Powers with BLAST.” Physical Review Letters 107.25 (2011): n. pag. Web. 8 Mar. 2012. © 2011 American Physical Society
Version: Final published version
ISSN
0031-9007
1079-7114

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